Mitochondria in skeletal muscle tissue can undergo rapid and characteristic changes as a consequence of manipulations of muscle use and environmental conditions. Endurance exercise training leads to increases of mitochondrial volume of up to 50% in training interventions of a few weeks in previously untrained subjects. Additionally, a shift of substrate metabolism toward a higher reliance on lipids is observed, structurally reflected as a doubling of the intramyocellular lipid content. A similar increase in intramyocellular lipids without an increase in mitochondrial volume is observed as a consequence of a high-fat diet. Strength training has a major impact on muscle myofibrillar volume, however the mitochondrial compartment appears relati...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
KEY POINTS: Low-volume high-intensity exercise training promotes muscle mitochondrial adaptations t...
NEW FINDINGS What is the topic of this review? We review recent work relating to exercise-induced a...
Skeletal muscle is the most abudant tissue of the human body, making up to 40 to 50% of the human bo...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Adaptation of skeletal muscle to repeated bouts of endurance exercise increases aerobic capacity and...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Adaptation of skeletal muscle to repeated bouts of endurance exercise increases aerobic capacity and...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
KEY POINTS: Low-volume high-intensity exercise training promotes muscle mitochondrial adaptations t...
NEW FINDINGS What is the topic of this review? We review recent work relating to exercise-induced a...
Skeletal muscle is the most abudant tissue of the human body, making up to 40 to 50% of the human bo...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Adaptation of skeletal muscle to repeated bouts of endurance exercise increases aerobic capacity and...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Adaptation of skeletal muscle to repeated bouts of endurance exercise increases aerobic capacity and...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
Mitochondria are dynamic organelles, intricately designed to meet cellular energy requirements. To a...
KEY POINTS: Low-volume high-intensity exercise training promotes muscle mitochondrial adaptations t...